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首页> 外文期刊>Medical and Biological Engineering and Computing: Journal of the International Federation for Medical and Biological Engineering >Effect of femoral neck modularity upon the prosthetic range of motion in total hip arthroplasty
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Effect of femoral neck modularity upon the prosthetic range of motion in total hip arthroplasty

机译:股骨颈模块化对全髋关节置换术中假体运动范围的影响

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摘要

In total hip arthroplasty, aseptic loosening and dislocation are associated with not being able to achieve the correct prosthetic component orientation. Femoral neck modularity has been proposed as a solution to this problem by allowing the surgeon to alter either the neck-shaft or version angle of the prosthetic femoral component intra-operatively. A single replicate full factorial design was used to evaluate how effective a modular femoral neck cementless stem was in restoring a healthy prosthetic range of motion in comparison with a leading fixed-neck cementless stem with the standard modular parameters. It was found that, if altered to a large enough degree, femoral neck modularity can increase the amount of prosthetic motion as well as alter its position to where it is required physiologically. However, there is a functional limit to the amount that can be corrected and there is a risk with regard to the surgeon having to select the optimum modular neck before any benefit is realised.
机译:在全髋关节置换术中,无菌性松动和脱位与无法实现正确的假体组件方向有关。通过允许外科医生在手术中改变假体股骨组件的颈轴或变型角,提出了股骨颈模块化来解决该问题。与具有标准模块化参数的领先固定颈非骨水泥杆相比,单个重复全因子设计用于评估模块化股骨颈非骨水泥杆在恢复健康的假体运动范围方面的有效性。已经发现,如果改变得足够大,则股骨颈模块化可以增加假体运动的量以及将其位置改变到生理上需要的位置。然而,可校正的量存在功能限制,并且存在外科医生在实现任何益处之前必须选择最佳模块化颈部的风险。

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